论文标题

在超级精美的铁磁srruo $ _3 $金属薄膜

Sub-THz momentum drag and violation of Matthiessen's rule in an ultraclean ferromagnetic SrRuO$_3$ metallic thin film

论文作者

Wang, Youcheng, Bosse, G., Nair, H. P., Schreiber, N. J., Ruf, J. P., Cheng, B., Adamo, C., Shai, D. E., Lubashevsky, Y., Schlom, D. G., Shen, K. M., Armitage, N. P.

论文摘要

srruo $ _3 $,一种大约160 \ k居里温度的铁磁铁,在低于$ \ $ 30 k的低于$ \ $ 30 k的$ t^2 $依赖性直流电阻率上表现出来。但是,先前在红外和terahertz中的光学研究和terahertz的光学研究在低温下在低温中表现出与fermi liike femipiquip thevip thevip thevip thevip captractiest theeptipers contractipers confip femi-lii的相反。在这项工作中,我们测量具有残留电阻率比的薄膜的低频Thz范围响应,$ρ_{300k}/ρ_{4K} \ $ 74。这样的低疾病样本允许对电子 - 电子相互作用对低频运输的影响前所未有。在低于30 K的温度下,我们发现了一个非常尖锐的零频模式,其宽度较窄,宽度大于$ k_bt/\ hbar $,也具有至少具有较大数量级散射速率的较宽的零频率Lorentzian。这两种功能都具有与费米 - 液体一致的温度依赖性,并明确显示t $^2 $缩放的更宽功能。这样的两种干燥的运输案阐明了先前关于违反Mathielssen规则的报道以及对金属鲜明的鲜明措施的极端敏感性。我们考虑了两种特征光学电导率的起源的许多可能性,包括保存带间散射的动量以及对伪摩托的近似保护产生的多型效应,这是由准1D费米表面产生的。

SrRuO$_3$, a ferromagnet with an approximately 160\,K Curie temperature, exhibits a $T^2$ dependent dc resistivity below $\approx$ 30 K. Nevertheless, previous optical studies in the infrared and terahertz range show non-Drude dynamics at low temperatures which seem to contradict a Fermi-liquid picture with long-lived quasiparticles. In this work, we measure the low-frequency THz range response of thin films with residual resistivity ratios, $ρ_{300K}/ ρ_{4K} \approx$ 74. Such low disorder samples allow an unprecedented look at the effects of electron-electron interactions on low-frequency transport. At temperatures below 30 K, we found both a very sharp zero-frequency mode which has a width narrower than $k_BT/\hbar$ as well as a broader zero frequency Lorentzian that has at least an order of magnitude larger scattering rate. Both features have temperature dependencies consistent with a Fermi-liquid with the wider feature explicitly showing a T$^2$ scaling. Such two -Drude transport sheds light on previous reports of the violation of Mathielssen's rule and extreme sensitivity to disorder in metallic ruthenates. We consider a number of possibilities for the origin of the two feature optical conductivity including multiband effects that arise from momentum conserving interband scattering and the approximate conservation of a pseudo-momentum that arises from quasi-1D Fermi surfaces.

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